会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 3. 发明授权
    • Transmission period determination method, transmission period determination device and program
    • 传输周期确定方法,传输周期确定装置和程序
    • US09154981B2
    • 2015-10-06
    • US14000007
    • 2012-02-17
    • Hiroshi FurukawaGuangri Jin
    • Hiroshi FurukawaGuangri Jin
    • H04W24/06H04W16/22H04W84/18
    • H04W24/06H04W16/22H04W84/18
    • A transmission period determination method, etc. capable of setting IPT transmission period by using general-purpose wireless modules and existing drivers is provided. A wireless communication system is a wireless backhaul. A route is established from a core node to a slave node. The core node assigns a specified transmission period and transmits a plurality of training packets to the slave node. The slave node transmits, to a transmission period determination device, the number of training packets received first and last and the number of training packets received without overlap. An estimation unit estimates a training time, the time for the slave node to receive the training packets. A calculation unit calculates a training metric candidate. An updating unit compares the values of the current training metric and the training metric candidate to determine the IPT transmission period.
    • 提供能够通过使用通用无线模块和现有驱动程序来设置IPT传输周期的传输周期确定方法等。 无线通信系统是无线回程。 从核心节点到从节点建立路由。 核心节点分配指定的传输周期并将多个训练分组发送到从节点。 从节点向发送周期确定装置发送接收到的训练数据包的数量,接收到的训练数据包的数量不重叠。 估计单元估计训练时间,从节点接收训练分组的时间。 计算单元计算训练度量候选。 更新单元比较当前训练度量和训练度量候选的值以确定IPT传输周期。
    • 4. 发明申请
    • TRANSMISSION PERIOD DETERMINATION METHOD, TRANSMISSION PERIOD DETERMINATION DEVICE AND PROGRAM
    • 传输周期确定方法,传输周期确定设备和程序
    • US20140022934A1
    • 2014-01-23
    • US14000007
    • 2012-02-17
    • Hiroshi FurukawaGuangri Jin
    • Hiroshi FurukawaGuangri Jin
    • H04W24/06
    • H04W24/06H04W16/22H04W84/18
    • A transmission period determination method, etc. capable of setting IPT transmission period by using general-purpose wireless modules and existing drivers is provided. A wireless communication system is a wireless backhaul. A route is established from a core node to a slave node. The core node assigns a specified transmission period and transmits a plurality of training packets to the slave node. The slave node transmits, to a transmission period determination device, the number of training packets received first and last and the number of training packets received without overlap. An estimation unit estimates a training time, the time for the slave node to receive the training packets. A calculation unit calculates a training metric candidate. An updating unit compares the values of the current training metric and the training metric candidate to determine the IPT transmission period.
    • 提供能够通过使用通用无线模块和现有驱动程序来设置IPT传输周期的传输周期确定方法等。 无线通信系统是无线回程。 从核心节点到从节点建立路由。 核心节点分配指定的传输周期并将多个训练分组发送到从节点。 从节点向发送周期确定装置发送接收到的训练数据包的数量,接收到的训练数据包的数量不重叠。 估计单元估计训练时间,从节点接收训练分组的时间。 计算单元计算训练度量候选。 更新单元比较当前训练度量和训练度量候选的值以确定IPT传输周期。
    • 7. 发明授权
    • Semiconductor integrated circuit in in a carry computation network having a logic blocks which are dynamically reconfigurable
    • 携带计算网络中的半导体集成电路具有可动态重新配置的逻辑块
    • US08352533B2
    • 2013-01-08
    • US12332673
    • 2008-12-11
    • Hiroshi Furukawa
    • Hiroshi Furukawa
    • G06F7/57
    • G06F7/5443
    • There is provided a semiconductor integrated circuit including: a plurality of first logic blocks which are reconfigurable, the plurality of first logic blocks inputting data of a first bit width and performing computation; a first network connecting the plurality of first logic blocks in a dynamically reconfigurable manner; a plurality of second logic blocks inputting data of a second bit width different from the first bit width and performing computation; a second network connected to outputs of the plurality of second logic blocks; and a third network connecting a carry bit output of a computing unit included in the first logic block to an input of a computing unit included in the second logic block in a dynamically reconfigurable manner.
    • 提供了一种半导体集成电路,包括:多个可重新配置的第一逻辑块,多个第一逻辑块输入第一位宽的数据并执行计算; 以动态可重新配置的方式连接所述多个第一逻辑块的第一网络; 多个第二逻辑块,输入与第一位宽不同的第二位宽的数据,并执行计算; 连接到所述多个第二逻辑块的输出的第二网络; 以及以动态可重新配置的方式将包括在第一逻辑块中的计算单元的进位位输出连接到包括在第二逻辑块中的计算单元的输入的第三网络。
    • 8. 发明授权
    • Enhanced processor element structure in a reconfigurable integrated circuit device
    • 可重构集成电路设备中增强的处理器元件结构
    • US07734896B2
    • 2010-06-08
    • US11390131
    • 2006-03-28
    • Hiroshi Furukawa
    • Hiroshi Furukawa
    • G06F15/76
    • G06F15/8007
    • A reconfigurable integrated circuit device which converts an arbitrary calculation state dynamically, based on configuration data, includes a plurality of processor elements, each of which has an input terminal, an output terminal, a plurality of arithmetic units which are provided in parallel and each of which performs calculation processing in synchronous with a clock signal, and an intra-processor network which connects them in an arbitrary state; and an inter-processor network which connects between processor elements in an arbitrary state. Based on configuration data, the intra-processor network is reconfigurable to a desired connection state, and further, based on the configuration data, the inter-processor network is reconfigurable to a desired connection state.
    • 基于配置数据动态地转换任意计算状态的可重构集成电路装置包括多个处理器元件,每个处理器元件具有输入端子,输出端子,并行设置的多个运算单元, 其执行与时钟信号同步的计算处理和以任意状态连接它们的处理器内网络; 以及以任意状态连接处理器元件之间的处理器间网络。 基于配置数据,内部处理器网络可重新配置为期望的连接状态,并且此外,基于配置数据,处理器间网络可重新配置为期望的连接状态。